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CO2 absorption and desorption characteristics of MgO-based absorbent promoted by triple eutectic alkali carbonate

机译:二苯二甲酸盐促进MgO的吸收剂的CO2吸收和解吸特性

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Carbon capture and sequestration is emerging as a promising technology to mitigate the greenhouse effect by reducing CO2 emissions. Of a number of metal oxides applied as CO2 absorbents, MgO is a potential material that can operate in a relatively low elevated temperature range (200-500 degrees C), namely, intermediate-temperatures. In the present research, we investigated the characteristics of CO2 absorption and desorption on MgO-based absorbents promoted by molten alkali metal carbonate that has a melting point of 397 degrees C (eutectic molar ratio of Li2CO3 : Na2CO3 : K2CO3 = 0.435 : 0.315 : 0.250). These absorbents absorb CO2 in two steps with the first step being very fast and large in capacity in comparison with other related absorbents in the literature and the second step being much slower than the first one. The overall capacity can be as large as 77% MgO conversion, much larger than other carbonate-promoted MgO absorbents in the literature. The fast first step of CO2 absorption is associated with the reaction of highly basic sites on the MgO surface formed through the interaction between the carbonates and MgO upon pre-treatment. Detailed analyses via in situ XRD revealed that MgCO3 and a new phase, probably a double carbonate between Mg and alkali ions, are formed as the carbonation products. A detailed mechanism is proposed based on the experimental data, which highlights the unique properties of the molten alkali carbonate as a dissolution medium for CO2 and MgO and even the product MgCO3.
机译:通过减少二氧化碳排放来实现碳捕获和封存作为有前途的技术,以减少电二氧化碳排放。施加的许多金属氧化物作为CO 2吸收剂,MgO是可以在相对低升高的温度范围内(200-500℃),即中间温度的潜在材料。在本研究中,我们研究了熔融碱金属碳酸盐促进的MgO的吸收剂的CO 2吸收和解吸的特性,所述熔融碱金属碳酸盐熔点为397℃(Li 2 CO 3:Na 2 CO 3:K 2 CO 3 = 0.435:0.315:0.250的熔融比例)。这些吸收剂以两个步骤吸收CO 2,其具有非常快速且容量的第一步,与文献中的其他相关的吸收剂相比,第二步比第一步慢得多。整体容量可以大约77%的MgO转化率,比其他碳酸盐促进的MgO吸收剂大得多。 CO 2吸收的快速第一步骤与通过在预处理时通过碳酸盐和MgO之间的相互作用形成的MgO表面上的高基本位点的反应有关。通过原位XRD进行详细分析显示,MgCO 3和新阶段,可能是Mg和碱离子之间的双碳酸盐,形成为碳酸化产物。基于实验数据提出了一种详细的机制,该数据突出了熔融碱碳酸盐作为CO 2和MgO的溶解介质的独特性质,甚至产物MgCO3。

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